CRYSTAL-STRUCTURE OF RIBONUCLEASE MS (AS A RIBONUCLEASE-T(1) HOMOLOG) COMPLEXED WITH A GUANYLYL-3',5'-CYTIDINE ANALOG

被引:28
作者
NONAKA, T
NAKAMURA, KT
UESUGI, S
IKEHARA, M
IRIE, M
MITSUI, Y
机构
[1] NAGAOKA UNIV TECHNOL,DEPT BIOENGN,NAGAOKA,NIIGATA 94021,JAPAN
[2] YOKOHAMA NATL UNIV,FAC ENGN,HODOGAYA KU,YOKOHAMA,KANAGAWA 240,JAPAN
[3] PROT ENGN RES INST,SUITA,OSAKA 565,JAPAN
[4] HOSHI COLL PHARM,DEPT MICROBIOL,SHINAGAWA KU,TOKYO 142,JAPAN
关键词
D O I
10.1021/bi00095a011
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A ribonuclease T1 homologue, ribonuclease Ms (RNase Ms) from Aspergillus saitoi, has been crystallized as a complex with a substrate analogue GfpC where the 2'-hydroxyl (2'-OH) group of guanosine in guanylyl-3',5'-cytidine (GpC) is replaced by the 2'-fluorine (2'-F) atom to prevent transesterification. The crystal structure of the complex was solved at 1.8-angstrom resolution to a final R-factor of 0.204. The role of His92 (RNase T1 numbering) as the general acid catalyst was confirmed. Of the two alternative candidates for a general base to abstract a proton from the 2'-OH group, His40 and Glu58 were found close to the 2'-F atom, making the decision between the two groups difficult. We then superposed the active site of the RNase Ms/GfpC complex with that of pancreatic ribonuclease S (RNase S) complexed with a substrate analogue UpcA, a phosphonate analogue of uridylyl-3',5'-adenosine (UpA), and found that His12 and His119 of RNase A almost exactly coincided with Glu58 and His92, respectively, of RNase Ms. Similar superposition with a prokaryotic microbial ribonuclease, RNase St [Nakamura, K. T., Iwahashi, K., Yamamoto, Y., Iitaka, Y., Yoshida, N., & Mitsui, Y. (1982) Nature 299, 564-566], also indicated Glu58 as a general base. Thus the present comparative geometrical studies consistently favor, albeit indirectly, the traditional as well as the most recent notion [Steyaert, J., Hallenga, K., Wyns, L., & Stanssens, P. (1990) Biochemistry 29, 9064-9072] that Glu58, rather than His40, must be the general base catalyst in the intact enzymes of the RNase T1 family.
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页码:11825 / 11837
页数:13
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共 79 条
[11]  
DING JP, 1991, J BIOL CHEM, V266, P15128
[12]   STRUCTURE OF RIBONUCLEASE-T1 COMPLEXED WITH ZINC(II) AT 1.8 ANGSTROM RESOLUTION - A ZN2+.6H2O - CARBOXYLATE CLATHRATE [J].
DING, JP ;
CHOE, HW ;
GRANZIN, J ;
SAENGER, W .
ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE, 1992, 48 :185-191
[13]   PRELIMINARY REFINEMENT OF PROTEIN COORDINATES IN REAL SPACE [J].
FLETTERICK, RJ ;
WYCKOFF, HW .
ACTA CRYSTALLOGRAPHICA SECTION A, 1975, 31 (SEP1) :698-700
[14]   EXPERIENCES WITH A NEW TRANSLATION-FUNCTION PROGRAM [J].
FUJINAGA, M ;
READ, RJ .
JOURNAL OF APPLIED CRYSTALLOGRAPHY, 1987, 20 :517-521
[15]   RNASE-T1 MUTANT GLU46GLN BINDS THE INHIBITORS 2'GMP AND 2'AMP AT THE 3' SUBSITE [J].
GRANZIN, J ;
PURASLUTZKE, R ;
LANDT, O ;
GRUNERT, HP ;
HEINEMANN, U ;
SAENGER, W ;
HAHN, U .
JOURNAL OF MOLECULAR BIOLOGY, 1992, 225 (02) :533-542
[16]   HOMOLOGY BETWEEN PROKARYOTIC AND EUKARYOTIC RIBONUCLEASES [J].
HARTLEY, RW .
JOURNAL OF MOLECULAR EVOLUTION, 1980, 15 (04) :355-358
[17]   SPECIFIC PROTEIN-NUCLEIC ACID RECOGNITION IN RIBONUCLEASE-T1-2'-GUANYLIC ACID COMPLEX - AN X-RAY STUDY [J].
HEINEMANN, U ;
SAENGER, W .
NATURE, 1982, 299 (5878) :27-31
[18]  
HENDRICKSON WA, 1985, METHOD ENZYMOL, V115, P252
[19]   THE PROCESSING OF DIFFRACTION DATA TAKEN ON A SCREENLESS WEISSENBERG CAMERA FOR MACROMOLECULAR CRYSTALLOGRAPHY [J].
HIGASHI, T .
JOURNAL OF APPLIED CRYSTALLOGRAPHY, 1989, 22 :9-18
[20]   THE STRUCTURAL AND SEQUENCE HOMOLOGY OF A FAMILY OF MICROBIAL RIBONUCLEASES [J].
HILL, C ;
DODSON, G ;
HEINEMANN, U ;
SAENGER, W ;
MITSUI, Y ;
NAKAMURA, K ;
BORISOV, S ;
TISCHENKO, G ;
POLYAKOV, K ;
PAVLOVSKY, S .
TRENDS IN BIOCHEMICAL SCIENCES, 1983, 8 (10) :364-369